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Le Zhao
Le Zhao
Lab Scientist, Aramco Research Center - Detroit
Verified email at aramcoamericas.com
Title
Cited by
Cited by
Year
Examining the role of flame topologies and in-cylinder flow fields on cyclic variability in spark-ignited engines using large-eddy simulation
L Zhao, AA Moiz, S Som, N Fogla, M Bybee, S Wahiduzzaman, ...
International Journal of Engine Research 19 (8), 886-904, 2018
712018
An Experimental and Numerical Study of Diesel Spray Impingement on a Flat Plate
L Zhao, R Torelli, X Zhu, R Scarcelli, S Som, H Schmidt, J Naber, SY Lee
SAE International Journal of Fuels and Lubricants 10 (2017-01-0854), 407-422, 2017
502017
Understanding Fuel Stratification Effects on Partially Premixed Compression Ignition (PPCI) Combustion and Emissions Behaviors
K Cho, L Zhao, M Ameen, Y Zhang, Y Pei, W Moore, M Sellnau
SAE Technical Paper, 2019
342019
Evaluation of Diesel Spray-Wall Interaction and Morphology around Impingement Location
L Zhao, R Torelli, X Zhu, J Naber, SY Lee, S Som, R Scarcelli, M Raessi
SAE Technical Paper, 2018
272018
Splashing Criterion and Topological Features of a Single Droplet Impinging on the Flat Plate
L Zhao, N Ahuja, X Zhu, Z Zhao, SY Lee
SAE Technical Paper, 2018
212018
High Pressure Impinging Spray Film Formation Characteristics
L Zhao, Z Zhao, X Zhu, N Ahuja, J Naber, SY Lee
SAE Technical Paper, 2018
152018
AN EXPERIMENTAL AND COMPUTATIONAL STUDY OF FUEL SPRAY INTERACTION: FUNDAMENTALS AND ENGINE APPLICATIONS
L Zhao
Michigan Technological University, 2018
142018
Investigation of multi-hole impinging jet high pressure spray characteristics under gasoline engine-like conditions
L Zhao, AA Moiz, SY Lee, J Naber, S Barros, W Atkinson
SAE Technical Paper, 2016
142016
An Experimental Study of Diesel Spray Impingement on a Flat Plate: Effects of Injection Conditions
X Zhu, L Zhao, Z Zhao, N Ahuja, SY Lee
ILASS–Europe 2017, 28th Conference on Liquid Atomization and Spray Systems, 2017
132017
Characterization of impingement dynamics of single droplet impacting on a flat surface
L Zhao, N Ahuja, X Zhu, Z Zhao, SY Lee
SAE Technical Paper, 2019
122019
An energy model of droplet impingement on an inclined wall under isothermal and non-isothermal environments
J Zhai, SY Lee, N Ahuja, L Zhao, X Zhu
International Journal of Heat and Mass Transfer 156, 119892, 2020
112020
Numerical evaluation of gasoline compression ignition at cold conditions in a heavy-duty diesel engine
L Zhao, M Ameen, Y Pei, Y Zhang, P Kumar, T Tzanetakis, M Traver
SAE Technical Paper, 2020
112020
Spray-wall dynamics of high-pressure impinging combustion
Z Zhao, X Zhu, L Zhao, J Naber, SY Lee
SAE Technical Paper, 2019
112019
High-Speed Spray-to-Spray Collision Study on Two-Hole Impinging Jet Nozzles
L Zhao, AA Moiz, J Naber, SY Lee, S Barros, W Atkinson
SAE Technical Paper, 2015
102015
Numerical Evaluation of Spray-Guided Glow Plug Assistance on Gasoline Compression Ignition During Cold Idle Operation in a Heavy-Duty Diesel Engine
L Zhao, Y Pei, Y Zhang, P Kumar, T Tzanetakis, M Traver, M Ameen
Internal Combustion Engine Division Fall Technical Conference 84034, V001T06A010, 2020
92020
Numerical evaluation of spark assisted cold idle operation in a heavy-duty gasoline compression ignition engine
L Zhao, Y Zhang, Y Pei, A Zhang, M Traver, M Ameen
SAE Technical Paper, 2021
82021
Numerical study on evaporation of spherical droplets impinging on the wall using volume of fluid (VOF) model
SP Potham, L Zhao, SY Lee
SAE Technical Paper, 2017
82017
AN EXPERIMENTAL AND COMPUTATIONAL STUDY OF A SINGLE DIESEL DROPLET IMPINGING ON A DRY SURFACE
D Markt, L Zhao, X Zhu, P Ashish, R Torelli, L Seong-Young, R Mehdi
14TH INTERNATIONAL CONFERENCE ON LIQUID ATOMIZATION & SPRAY SYSTEMS, 2018
72018
Droplet Impingement and Evaporation on a Solid Surface
SY Lee, L Zhao
Two-Phase Flow for Automotive and Power Generation Sectors, 145-183, 2019
62019
Multi-cycle large eddy simulation to capture cycle-to-cycle variation (CCV) in spark-ignited (SI) engines
L Zhao, AA Moiz, S Som, N Fogla, M Bybee, S Wahiduzzaman, ...
10th U. S. National Combustion Meeting, 2017
62017
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